#![doc = "Peripheral access API for ESP32-C3 microcontrollers (generated using svd2rust v0.33.3 ( ))\n\nYou can find an overview of the generated API [here].\n\nAPI features to be included in the [next] svd2rust release can be generated by cloning the svd2rust [repository], checking out the above commit, and running `cargo doc --open`.\n\n[here]: https://docs.rs/svd2rust/0.33.3/svd2rust/#peripheral-api\n[next]: https://github.com/rust-embedded/svd2rust/blob/master/CHANGELOG.md#unreleased\n[repository]: https://github.com/rust-embedded/svd2rust"]
#![allow(non_camel_case_types)]
#![allow(non_snake_case)]
#![doc(html_logo_url = "https://avatars.githubusercontent.com/u/46717278")]
#![no_std]
use core::marker::PhantomData;
use core::ops::Deref;
#[doc = r"Number available in the NVIC for configuring priority"]
pub const NVIC_PRIO_BITS: u8 = 0;
#[allow(unused_imports)]
use generic::*;
#[doc = r"Common register and bit access and modify traits"]
pub mod generic;
#[cfg(feature = "rt")]
extern "C" {
fn WIFI_MAC();
fn WIFI_MAC_NMI();
fn WIFI_PWR();
fn WIFI_BB();
fn BT_MAC();
fn BT_BB();
fn BT_BB_NMI();
fn RWBT();
fn RWBLE();
fn RWBT_NMI();
fn RWBLE_NMI();
fn I2C_MASTER();
fn SLC0();
fn SLC1();
fn APB_CTRL();
fn UHCI0();
fn GPIO();
fn GPIO_NMI();
fn SPI1();
fn SPI2();
fn I2S0();
fn UART0();
fn UART1();
fn LEDC();
fn EFUSE();
fn TWAI0();
fn USB_DEVICE();
fn RTC_CORE();
fn RMT();
fn I2C_EXT0();
fn TIMER1();
fn TIMER2();
fn TG0_T0_LEVEL();
fn TG0_WDT_LEVEL();
fn TG1_T0_LEVEL();
fn TG1_WDT_LEVEL();
fn CACHE_IA();
fn SYSTIMER_TARGET0();
fn SYSTIMER_TARGET1();
fn SYSTIMER_TARGET2();
fn SPI_MEM_REJECT_CACHE();
fn ICACHE_PRELOAD0();
fn ICACHE_SYNC0();
fn APB_ADC();
fn DMA_CH0();
fn DMA_CH1();
fn DMA_CH2();
fn RSA();
fn AES();
fn SHA();
fn FROM_CPU_INTR0();
fn FROM_CPU_INTR1();
fn FROM_CPU_INTR2();
fn FROM_CPU_INTR3();
fn ASSIST_DEBUG();
fn DMA_APBPERI_PMS();
fn CORE0_IRAM0_PMS();
fn CORE0_DRAM0_PMS();
fn CORE0_PIF_PMS();
fn CORE0_PIF_PMS_SIZE();
fn BAK_PMS_VIOLATE();
fn CACHE_CORE0_ACS();
}
#[doc(hidden)]
#[repr(C)]
pub union Vector {
pub _handler: unsafe extern "C" fn(),
pub _reserved: usize,
}
#[cfg(feature = "rt")]
#[doc(hidden)]
#[link_section = ".rwtext"]
#[no_mangle]
pub static __EXTERNAL_INTERRUPTS: [Vector; 62] = [
Vector { _handler: WIFI_MAC },
Vector {
_handler: WIFI_MAC_NMI,
},
Vector { _handler: WIFI_PWR },
Vector { _handler: WIFI_BB },
Vector { _handler: BT_MAC },
Vector { _handler: BT_BB },
Vector {
_handler: BT_BB_NMI,
},
Vector { _handler: RWBT },
Vector { _handler: RWBLE },
Vector { _handler: RWBT_NMI },
Vector {
_handler: RWBLE_NMI,
},
Vector {
_handler: I2C_MASTER,
},
Vector { _handler: SLC0 },
Vector { _handler: SLC1 },
Vector { _handler: APB_CTRL },
Vector { _handler: UHCI0 },
Vector { _handler: GPIO },
Vector { _handler: GPIO_NMI },
Vector { _handler: SPI1 },
Vector { _handler: SPI2 },
Vector { _handler: I2S0 },
Vector { _handler: UART0 },
Vector { _handler: UART1 },
Vector { _handler: LEDC },
Vector { _handler: EFUSE },
Vector { _handler: TWAI0 },
Vector {
_handler: USB_DEVICE,
},
Vector { _handler: RTC_CORE },
Vector { _handler: RMT },
Vector { _handler: I2C_EXT0 },
Vector { _handler: TIMER1 },
Vector { _handler: TIMER2 },
Vector {
_handler: TG0_T0_LEVEL,
},
Vector {
_handler: TG0_WDT_LEVEL,
},
Vector {
_handler: TG1_T0_LEVEL,
},
Vector {
_handler: TG1_WDT_LEVEL,
},
Vector { _handler: CACHE_IA },
Vector {
_handler: SYSTIMER_TARGET0,
},
Vector {
_handler: SYSTIMER_TARGET1,
},
Vector {
_handler: SYSTIMER_TARGET2,
},
Vector {
_handler: SPI_MEM_REJECT_CACHE,
},
Vector {
_handler: ICACHE_PRELOAD0,
},
Vector {
_handler: ICACHE_SYNC0,
},
Vector { _handler: APB_ADC },
Vector { _handler: DMA_CH0 },
Vector { _handler: DMA_CH1 },
Vector { _handler: DMA_CH2 },
Vector { _handler: RSA },
Vector { _handler: AES },
Vector { _handler: SHA },
Vector {
_handler: FROM_CPU_INTR0,
},
Vector {
_handler: FROM_CPU_INTR1,
},
Vector {
_handler: FROM_CPU_INTR2,
},
Vector {
_handler: FROM_CPU_INTR3,
},
Vector {
_handler: ASSIST_DEBUG,
},
Vector {
_handler: DMA_APBPERI_PMS,
},
Vector {
_handler: CORE0_IRAM0_PMS,
},
Vector {
_handler: CORE0_DRAM0_PMS,
},
Vector {
_handler: CORE0_PIF_PMS,
},
Vector {
_handler: CORE0_PIF_PMS_SIZE,
},
Vector {
_handler: BAK_PMS_VIOLATE,
},
Vector {
_handler: CACHE_CORE0_ACS,
},
];
#[doc(hidden)]
pub mod interrupt;
pub use self::interrupt::Interrupt;
#[doc = "AES (Advanced Encryption Standard) Accelerator"]
pub struct AES {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for AES {}
impl AES {
#[doc = r"Pointer to the register block"]
pub const PTR: *const aes::RegisterBlock = 0x6003_a000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const aes::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for AES {
type Target = aes::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for AES {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("AES").finish()
}
}
#[doc = "AES (Advanced Encryption Standard) Accelerator"]
pub mod aes;
#[doc = "APB (Advanced Peripheral Bus) Controller"]
pub struct APB_CTRL {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for APB_CTRL {}
impl APB_CTRL {
#[doc = r"Pointer to the register block"]
pub const PTR: *const apb_ctrl::RegisterBlock = 0x6002_6000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const apb_ctrl::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for APB_CTRL {
type Target = apb_ctrl::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for APB_CTRL {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("APB_CTRL").finish()
}
}
#[doc = "APB (Advanced Peripheral Bus) Controller"]
pub mod apb_ctrl;
#[doc = "SAR (Successive Approximation Register) Analog-to-Digital Converter"]
pub struct APB_SARADC {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for APB_SARADC {}
impl APB_SARADC {
#[doc = r"Pointer to the register block"]
pub const PTR: *const apb_saradc::RegisterBlock = 0x6004_0000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const apb_saradc::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for APB_SARADC {
type Target = apb_saradc::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for APB_SARADC {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("APB_SARADC").finish()
}
}
#[doc = "SAR (Successive Approximation Register) Analog-to-Digital Converter"]
pub mod apb_saradc;
#[doc = "Debug Assist"]
pub struct ASSIST_DEBUG {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for ASSIST_DEBUG {}
impl ASSIST_DEBUG {
#[doc = r"Pointer to the register block"]
pub const PTR: *const assist_debug::RegisterBlock = 0x600c_e000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const assist_debug::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for ASSIST_DEBUG {
type Target = assist_debug::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for ASSIST_DEBUG {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("ASSIST_DEBUG").finish()
}
}
#[doc = "Debug Assist"]
pub mod assist_debug;
#[doc = "BB Peripheral"]
pub struct BB {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for BB {}
impl BB {
#[doc = r"Pointer to the register block"]
pub const PTR: *const bb::RegisterBlock = 0x6001_d000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const bb::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for BB {
type Target = bb::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for BB {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("BB").finish()
}
}
#[doc = "BB Peripheral"]
pub mod bb;
#[doc = "DMA (Direct Memory Access) Controller"]
pub struct DMA {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for DMA {}
impl DMA {
#[doc = r"Pointer to the register block"]
pub const PTR: *const dma::RegisterBlock = 0x6003_f000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const dma::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for DMA {
type Target = dma::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for DMA {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("DMA").finish()
}
}
#[doc = "DMA (Direct Memory Access) Controller"]
pub mod dma;
#[doc = "Digital Signature"]
pub struct DS {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for DS {}
impl DS {
#[doc = r"Pointer to the register block"]
pub const PTR: *const ds::RegisterBlock = 0x6003_d000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const ds::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for DS {
type Target = ds::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for DS {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("DS").finish()
}
}
#[doc = "Digital Signature"]
pub mod ds;
#[doc = "eFuse Controller"]
pub struct EFUSE {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for EFUSE {}
impl EFUSE {
#[doc = r"Pointer to the register block"]
pub const PTR: *const efuse::RegisterBlock = 0x6000_8800 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const efuse::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for EFUSE {
type Target = efuse::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for EFUSE {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("EFUSE").finish()
}
}
#[doc = "eFuse Controller"]
pub mod efuse;
#[doc = "External Memory"]
pub struct EXTMEM {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for EXTMEM {}
impl EXTMEM {
#[doc = r"Pointer to the register block"]
pub const PTR: *const extmem::RegisterBlock = 0x600c_4000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const extmem::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for EXTMEM {
type Target = extmem::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for EXTMEM {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("EXTMEM").finish()
}
}
#[doc = "External Memory"]
pub mod extmem;
#[doc = "General Purpose Input/Output"]
pub struct GPIO {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for GPIO {}
impl GPIO {
#[doc = r"Pointer to the register block"]
pub const PTR: *const gpio::RegisterBlock = 0x6000_4000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const gpio::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for GPIO {
type Target = gpio::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for GPIO {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("GPIO").finish()
}
}
#[doc = "General Purpose Input/Output"]
pub mod gpio;
#[doc = "Sigma-Delta Modulation"]
pub struct GPIO_SD {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for GPIO_SD {}
impl GPIO_SD {
#[doc = r"Pointer to the register block"]
pub const PTR: *const gpio_sd::RegisterBlock = 0x6000_4f00 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const gpio_sd::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for GPIO_SD {
type Target = gpio_sd::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for GPIO_SD {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("GPIO_SD").finish()
}
}
#[doc = "Sigma-Delta Modulation"]
pub mod gpio_sd;
#[doc = "HMAC (Hash-based Message Authentication Code) Accelerator"]
pub struct HMAC {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for HMAC {}
impl HMAC {
#[doc = r"Pointer to the register block"]
pub const PTR: *const hmac::RegisterBlock = 0x6003_e000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const hmac::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for HMAC {
type Target = hmac::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for HMAC {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("HMAC").finish()
}
}
#[doc = "HMAC (Hash-based Message Authentication Code) Accelerator"]
pub mod hmac;
#[doc = "I2C (Inter-Integrated Circuit) Controller 0"]
pub struct I2C0 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for I2C0 {}
impl I2C0 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const i2c0::RegisterBlock = 0x6001_3000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const i2c0::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for I2C0 {
type Target = i2c0::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for I2C0 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("I2C0").finish()
}
}
#[doc = "I2C (Inter-Integrated Circuit) Controller 0"]
pub mod i2c0;
#[doc = "I2S (Inter-IC Sound) Controller 0"]
pub struct I2S0 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for I2S0 {}
impl I2S0 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const i2s0::RegisterBlock = 0x6002_d000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const i2s0::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for I2S0 {
type Target = i2s0::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for I2S0 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("I2S0").finish()
}
}
#[doc = "I2S (Inter-IC Sound) Controller 0"]
pub mod i2s0;
#[doc = "Interrupt Controller (Core 0)"]
pub struct INTERRUPT_CORE0 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for INTERRUPT_CORE0 {}
impl INTERRUPT_CORE0 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const interrupt_core0::RegisterBlock = 0x600c_2000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const interrupt_core0::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for INTERRUPT_CORE0 {
type Target = interrupt_core0::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for INTERRUPT_CORE0 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("INTERRUPT_CORE0").finish()
}
}
#[doc = "Interrupt Controller (Core 0)"]
pub mod interrupt_core0;
#[doc = "Input/Output Multiplexer"]
pub struct IO_MUX {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for IO_MUX {}
impl IO_MUX {
#[doc = r"Pointer to the register block"]
pub const PTR: *const io_mux::RegisterBlock = 0x6000_9000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const io_mux::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for IO_MUX {
type Target = io_mux::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for IO_MUX {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("IO_MUX").finish()
}
}
#[doc = "Input/Output Multiplexer"]
pub mod io_mux;
#[doc = "LED Control PWM (Pulse Width Modulation)"]
pub struct LEDC {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for LEDC {}
impl LEDC {
#[doc = r"Pointer to the register block"]
pub const PTR: *const ledc::RegisterBlock = 0x6001_9000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const ledc::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for LEDC {
type Target = ledc::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for LEDC {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("LEDC").finish()
}
}
#[doc = "LED Control PWM (Pulse Width Modulation)"]
pub mod ledc;
#[doc = "Remote Control"]
pub struct RMT {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for RMT {}
impl RMT {
#[doc = r"Pointer to the register block"]
pub const PTR: *const rmt::RegisterBlock = 0x6001_6000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const rmt::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for RMT {
type Target = rmt::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for RMT {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("RMT").finish()
}
}
#[doc = "Remote Control"]
pub mod rmt;
#[doc = "Hardware Random Number Generator"]
pub struct RNG {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for RNG {}
impl RNG {
#[doc = r"Pointer to the register block"]
pub const PTR: *const rng::RegisterBlock = 0x6002_6000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const rng::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for RNG {
type Target = rng::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for RNG {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("RNG").finish()
}
}
#[doc = "Hardware Random Number Generator"]
pub mod rng;
#[doc = "RSA (Rivest Shamir Adleman) Accelerator"]
pub struct RSA {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for RSA {}
impl RSA {
#[doc = r"Pointer to the register block"]
pub const PTR: *const rsa::RegisterBlock = 0x6003_c000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const rsa::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for RSA {
type Target = rsa::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for RSA {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("RSA").finish()
}
}
#[doc = "RSA (Rivest Shamir Adleman) Accelerator"]
pub mod rsa;
#[doc = "Real-Time Clock Control"]
pub struct RTC_CNTL {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for RTC_CNTL {}
impl RTC_CNTL {
#[doc = r"Pointer to the register block"]
pub const PTR: *const rtc_cntl::RegisterBlock = 0x6000_8000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const rtc_cntl::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for RTC_CNTL {
type Target = rtc_cntl::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for RTC_CNTL {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("RTC_CNTL").finish()
}
}
#[doc = "Real-Time Clock Control"]
pub mod rtc_cntl;
#[doc = "SENSITIVE Peripheral"]
pub struct SENSITIVE {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for SENSITIVE {}
impl SENSITIVE {
#[doc = r"Pointer to the register block"]
pub const PTR: *const sensitive::RegisterBlock = 0x600c_1000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const sensitive::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for SENSITIVE {
type Target = sensitive::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for SENSITIVE {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("SENSITIVE").finish()
}
}
#[doc = "SENSITIVE Peripheral"]
pub mod sensitive;
#[doc = "SHA (Secure Hash Algorithm) Accelerator"]
pub struct SHA {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for SHA {}
impl SHA {
#[doc = r"Pointer to the register block"]
pub const PTR: *const sha::RegisterBlock = 0x6003_b000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const sha::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for SHA {
type Target = sha::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for SHA {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("SHA").finish()
}
}
#[doc = "SHA (Secure Hash Algorithm) Accelerator"]
pub mod sha;
#[doc = "SPI (Serial Peripheral Interface) Controller 0"]
pub struct SPI0 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for SPI0 {}
impl SPI0 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const spi0::RegisterBlock = 0x6000_3000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const spi0::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for SPI0 {
type Target = spi0::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for SPI0 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("SPI0").finish()
}
}
#[doc = "SPI (Serial Peripheral Interface) Controller 0"]
pub mod spi0;
#[doc = "SPI (Serial Peripheral Interface) Controller 1"]
pub struct SPI1 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for SPI1 {}
impl SPI1 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const spi1::RegisterBlock = 0x6000_2000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const spi1::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for SPI1 {
type Target = spi1::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for SPI1 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("SPI1").finish()
}
}
#[doc = "SPI (Serial Peripheral Interface) Controller 1"]
pub mod spi1;
#[doc = "SPI (Serial Peripheral Interface) Controller 2"]
pub struct SPI2 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for SPI2 {}
impl SPI2 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const spi2::RegisterBlock = 0x6002_4000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const spi2::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for SPI2 {
type Target = spi2::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for SPI2 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("SPI2").finish()
}
}
#[doc = "SPI (Serial Peripheral Interface) Controller 2"]
pub mod spi2;
#[doc = "System Configuration Registers"]
pub struct SYSTEM {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for SYSTEM {}
impl SYSTEM {
#[doc = r"Pointer to the register block"]
pub const PTR: *const system::RegisterBlock = 0x600c_0000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const system::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for SYSTEM {
type Target = system::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for SYSTEM {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("SYSTEM").finish()
}
}
#[doc = "System Configuration Registers"]
pub mod system;
#[doc = "System Timer"]
pub struct SYSTIMER {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for SYSTIMER {}
impl SYSTIMER {
#[doc = r"Pointer to the register block"]
pub const PTR: *const systimer::RegisterBlock = 0x6002_3000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const systimer::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for SYSTIMER {
type Target = systimer::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for SYSTIMER {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("SYSTIMER").finish()
}
}
#[doc = "System Timer"]
pub mod systimer;
#[doc = "Timer Group 0"]
pub struct TIMG0 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for TIMG0 {}
impl TIMG0 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const timg0::RegisterBlock = 0x6001_f000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const timg0::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for TIMG0 {
type Target = timg0::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for TIMG0 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("TIMG0").finish()
}
}
#[doc = "Timer Group 0"]
pub mod timg0;
#[doc = "Timer Group 1"]
pub struct TIMG1 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for TIMG1 {}
impl TIMG1 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const timg0::RegisterBlock = 0x6002_0000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const timg0::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for TIMG1 {
type Target = timg0::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for TIMG1 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("TIMG1").finish()
}
}
#[doc = "Timer Group 1"]
pub use self::timg0 as timg1;
#[doc = "Two-Wire Automotive Interface"]
pub struct TWAI0 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for TWAI0 {}
impl TWAI0 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const twai0::RegisterBlock = 0x6002_b000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const twai0::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for TWAI0 {
type Target = twai0::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for TWAI0 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("TWAI0").finish()
}
}
#[doc = "Two-Wire Automotive Interface"]
pub mod twai0;
#[doc = "UART (Universal Asynchronous Receiver-Transmitter) Controller 0"]
pub struct UART0 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for UART0 {}
impl UART0 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const uart0::RegisterBlock = 0x6000_0000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const uart0::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for UART0 {
type Target = uart0::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for UART0 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("UART0").finish()
}
}
#[doc = "UART (Universal Asynchronous Receiver-Transmitter) Controller 0"]
pub mod uart0;
#[doc = "UART (Universal Asynchronous Receiver-Transmitter) Controller 1"]
pub struct UART1 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for UART1 {}
impl UART1 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const uart0::RegisterBlock = 0x6001_0000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const uart0::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for UART1 {
type Target = uart0::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for UART1 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("UART1").finish()
}
}
#[doc = "UART (Universal Asynchronous Receiver-Transmitter) Controller 1"]
pub use self::uart0 as uart1;
#[doc = "Universal Host Controller Interface 0"]
pub struct UHCI0 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for UHCI0 {}
impl UHCI0 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const uhci0::RegisterBlock = 0x6001_4000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const uhci0::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for UHCI0 {
type Target = uhci0::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for UHCI0 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("UHCI0").finish()
}
}
#[doc = "Universal Host Controller Interface 0"]
pub mod uhci0;
#[doc = "Universal Host Controller Interface 1"]
pub struct UHCI1 {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for UHCI1 {}
impl UHCI1 {
#[doc = r"Pointer to the register block"]
pub const PTR: *const uhci0::RegisterBlock = 0x6000_c000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const uhci0::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for UHCI1 {
type Target = uhci0::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for UHCI1 {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("UHCI1").finish()
}
}
#[doc = "Universal Host Controller Interface 1"]
pub use self::uhci0 as uhci1;
#[doc = "Full-speed USB Serial/JTAG Controller"]
pub struct USB_DEVICE {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for USB_DEVICE {}
impl USB_DEVICE {
#[doc = r"Pointer to the register block"]
pub const PTR: *const usb_device::RegisterBlock = 0x6004_3000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const usb_device::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for USB_DEVICE {
type Target = usb_device::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for USB_DEVICE {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("USB_DEVICE").finish()
}
}
#[doc = "Full-speed USB Serial/JTAG Controller"]
pub mod usb_device;
#[doc = "XTS-AES-128 Flash Encryption"]
pub struct XTS_AES {
_marker: PhantomData<*const ()>,
}
unsafe impl Send for XTS_AES {}
impl XTS_AES {
#[doc = r"Pointer to the register block"]
pub const PTR: *const xts_aes::RegisterBlock = 0x600c_c000 as *const _;
#[doc = r"Return the pointer to the register block"]
#[inline(always)]
pub const fn ptr() -> *const xts_aes::RegisterBlock {
Self::PTR
}
#[doc = r" Steal an instance of this peripheral"]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Ensure that the new instance of the peripheral cannot be used in a way"]
#[doc = r" that may race with any existing instances, for example by only"]
#[doc = r" accessing read-only or write-only registers, or by consuming the"]
#[doc = r" original peripheral and using critical sections to coordinate"]
#[doc = r" access between multiple new instances."]
#[doc = r""]
#[doc = r" Additionally, other software such as HALs may rely on only one"]
#[doc = r" peripheral instance existing to ensure memory safety; ensure"]
#[doc = r" no stolen instances are passed to such software."]
pub unsafe fn steal() -> Self {
Self {
_marker: PhantomData,
}
}
}
impl Deref for XTS_AES {
type Target = xts_aes::RegisterBlock;
#[inline(always)]
fn deref(&self) -> &Self::Target {
unsafe { &*Self::PTR }
}
}
impl core::fmt::Debug for XTS_AES {
fn fmt(&self, f: &mut core::fmt::Formatter) -> core::fmt::Result {
f.debug_struct("XTS_AES").finish()
}
}
#[doc = "XTS-AES-128 Flash Encryption"]
pub mod xts_aes;
#[no_mangle]
static mut DEVICE_PERIPHERALS: bool = false;
#[doc = r" All the peripherals."]
#[allow(non_snake_case)]
pub struct Peripherals {
#[doc = "AES"]
pub AES: AES,
#[doc = "APB_CTRL"]
pub APB_CTRL: APB_CTRL,
#[doc = "APB_SARADC"]
pub APB_SARADC: APB_SARADC,
#[doc = "ASSIST_DEBUG"]
pub ASSIST_DEBUG: ASSIST_DEBUG,
#[doc = "BB"]
pub BB: BB,
#[doc = "DMA"]
pub DMA: DMA,
#[doc = "DS"]
pub DS: DS,
#[doc = "EFUSE"]
pub EFUSE: EFUSE,
#[doc = "EXTMEM"]
pub EXTMEM: EXTMEM,
#[doc = "GPIO"]
pub GPIO: GPIO,
#[doc = "GPIO_SD"]
pub GPIO_SD: GPIO_SD,
#[doc = "HMAC"]
pub HMAC: HMAC,
#[doc = "I2C0"]
pub I2C0: I2C0,
#[doc = "I2S0"]
pub I2S0: I2S0,
#[doc = "INTERRUPT_CORE0"]
pub INTERRUPT_CORE0: INTERRUPT_CORE0,
#[doc = "IO_MUX"]
pub IO_MUX: IO_MUX,
#[doc = "LEDC"]
pub LEDC: LEDC,
#[doc = "RMT"]
pub RMT: RMT,
#[doc = "RNG"]
pub RNG: RNG,
#[doc = "RSA"]
pub RSA: RSA,
#[doc = "RTC_CNTL"]
pub RTC_CNTL: RTC_CNTL,
#[doc = "SENSITIVE"]
pub SENSITIVE: SENSITIVE,
#[doc = "SHA"]
pub SHA: SHA,
#[doc = "SPI0"]
pub SPI0: SPI0,
#[doc = "SPI1"]
pub SPI1: SPI1,
#[doc = "SPI2"]
pub SPI2: SPI2,
#[doc = "SYSTEM"]
pub SYSTEM: SYSTEM,
#[doc = "SYSTIMER"]
pub SYSTIMER: SYSTIMER,
#[doc = "TIMG0"]
pub TIMG0: TIMG0,
#[doc = "TIMG1"]
pub TIMG1: TIMG1,
#[doc = "TWAI0"]
pub TWAI0: TWAI0,
#[doc = "UART0"]
pub UART0: UART0,
#[doc = "UART1"]
pub UART1: UART1,
#[doc = "UHCI0"]
pub UHCI0: UHCI0,
#[doc = "UHCI1"]
pub UHCI1: UHCI1,
#[doc = "USB_DEVICE"]
pub USB_DEVICE: USB_DEVICE,
#[doc = "XTS_AES"]
pub XTS_AES: XTS_AES,
}
impl Peripherals {
#[doc = r" Returns all the peripherals *once*."]
#[cfg(feature = "critical-section")]
#[inline]
pub fn take() -> Option<Self> {
critical_section::with(|_| {
if unsafe { DEVICE_PERIPHERALS } {
return None;
}
Some(unsafe { Peripherals::steal() })
})
}
#[doc = r" Unchecked version of `Peripherals::take`."]
#[doc = r""]
#[doc = r" # Safety"]
#[doc = r""]
#[doc = r" Each of the returned peripherals must be used at most once."]
#[inline]
pub unsafe fn steal() -> Self {
DEVICE_PERIPHERALS = true;
Peripherals {
AES: AES {
_marker: PhantomData,
},
APB_CTRL: APB_CTRL {
_marker: PhantomData,
},
APB_SARADC: APB_SARADC {
_marker: PhantomData,
},
ASSIST_DEBUG: ASSIST_DEBUG {
_marker: PhantomData,
},
BB: BB {
_marker: PhantomData,
},
DMA: DMA {
_marker: PhantomData,
},
DS: DS {
_marker: PhantomData,
},
EFUSE: EFUSE {
_marker: PhantomData,
},
EXTMEM: EXTMEM {
_marker: PhantomData,
},
GPIO: GPIO {
_marker: PhantomData,
},
GPIO_SD: GPIO_SD {
_marker: PhantomData,
},
HMAC: HMAC {
_marker: PhantomData,
},
I2C0: I2C0 {
_marker: PhantomData,
},
I2S0: I2S0 {
_marker: PhantomData,
},
INTERRUPT_CORE0: INTERRUPT_CORE0 {
_marker: PhantomData,
},
IO_MUX: IO_MUX {
_marker: PhantomData,
},
LEDC: LEDC {
_marker: PhantomData,
},
RMT: RMT {
_marker: PhantomData,
},
RNG: RNG {
_marker: PhantomData,
},
RSA: RSA {
_marker: PhantomData,
},
RTC_CNTL: RTC_CNTL {
_marker: PhantomData,
},
SENSITIVE: SENSITIVE {
_marker: PhantomData,
},
SHA: SHA {
_marker: PhantomData,
},
SPI0: SPI0 {
_marker: PhantomData,
},
SPI1: SPI1 {
_marker: PhantomData,
},
SPI2: SPI2 {
_marker: PhantomData,
},
SYSTEM: SYSTEM {
_marker: PhantomData,
},
SYSTIMER: SYSTIMER {
_marker: PhantomData,
},
TIMG0: TIMG0 {
_marker: PhantomData,
},
TIMG1: TIMG1 {
_marker: PhantomData,
},
TWAI0: TWAI0 {
_marker: PhantomData,
},
UART0: UART0 {
_marker: PhantomData,
},
UART1: UART1 {
_marker: PhantomData,
},
UHCI0: UHCI0 {
_marker: PhantomData,
},
UHCI1: UHCI1 {
_marker: PhantomData,
},
USB_DEVICE: USB_DEVICE {
_marker: PhantomData,
},
XTS_AES: XTS_AES {
_marker: PhantomData,
},
}
}
}